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Good cytocompatibility and interfacial strength render the technique promising in surface modification of implant materials.
Future studies are needed to determine if supplemental soft tissue procedures or modification of implant design will serve to improve functional outcome in this difficult-to-treat subset of patients.
In addition, nanoscale modification of implant surfaces has been suggested to further increase its biomimicry and bioactivity.
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The surface design and modification of implants can effectively promote its biocompatibility and integration ability.
Modification of implants to present bioactive motifs such as the RGD cell-adhesive sequence from fibronectin (FN) represents a promising approach in regenerative medicine.
Examined layers showed a uniform distribution of silver in the amorphous DLC matrix, high value of H/E ratio, good adhesion and beneficial topography which make them a perfect material for medical applications e.g. modification of implants for the external fixations.
To address this problem, surface modifications of implant materials such as carbon nanotube (CNT) coatings have been investigated in the past years.
Modifications of implant surface properties have been shown to have a positive influence on the successful osseointegration of an implant [19 22].
Marking of an implant requires modification of the implant design, but it is not feasible for custom-made articular focal knee implants.
Marking of an implant requires modification of the implant design.
Research has been consequently focused on the surface modifications of implants aimed to simulate the size of the proteins or cell membrane receptors.
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